Wong, S.H.M. and Lim, S.S. and Tiong, T.J. and Show, P.L. and Zaid, H.F.M. and Loh, H.-S. (2020) Preliminary in vitro evaluation of chitosan�graphene oxide scaffolds on osteoblastic adhesion, proliferation, and early differentiation. International Journal of Molecular Sciences, 21 (15). pp. 1-12.
Full text not available from this repository.Abstract
An ideal scaffold should be biocompatible, having appropriate microstructure, excellent mechanical strength yet degrades. Chitosan exhibits most of these exceptional properties, but it is always associated with sub-optimal cytocompatibility. This study aimed to incorporate graphene oxide at wt of 0, 2, 4, and 6 into chitosan matrix via direct blending of chitosan solution and graphene oxide, freezing, and freeze drying. Cell fixation, 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyl tetrazolium bromide, alkaline phosphatase colorimetric assays were conducted to assess cell adhesion, proliferation, and early differentiation of MG63 on chitosan�graphene oxide scaffolds respectively. The presence of alkaline phosphatase, an early osteoblast differentiation marker, was further detected in chitosan�graphene oxide scaffolds using western blot. These results strongly supported that chitosan scaffolds loaded with graphene oxide at 2 wt mediated cell adhesion, proliferation, and early differentiation due to the presence of oxygen-containing functional groups of graphene oxide. Therefore, chitosan scaffolds loaded with graphene oxide at 2 wt showed the potential to be developed into functional bone scaffolds. © 2020 by the authors. Licensee MDPI, Basel, Switzerland.
Item Type: | Article |
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Impact Factor: | cited By 7 |
Uncontrolled Keywords: | alkaline phosphatase; chitosan; graphene oxide; molecular scaffold; alkaline phosphatase; biomaterial; chitosan; glutaraldehyde; graphene oxide; graphite, Article; biocompatibility; bone mineralization; bone regeneration; bone remodeling; cell adhesion; cell adhesion assay; cell differentiation; cell proliferation; cell viability; colorimetry; controlled study; decellularization; energy dispersive X ray spectroscopy; extracellular matrix; field emission scanning electron microscopy; freeze drying; in vitro study; MG-63 cell line; MTT assay; nanofabrication; osteoblast; physical chemistry; polyacrylamide gel electrophoresis; tissue regeneration; ultraviolet visible spectroscopy; Western blotting; bone development; cell adhesion; cell proliferation; chemistry; drug effect; human; metabolism; osteoblast; procedures; scanning electron microscopy; tissue engineering; tissue scaffold, Alkaline Phosphatase; Biocompatible Materials; Cell Adhesion; Cell Proliferation; Chitosan; Glutaral; Graphite; Humans; Microscopy, Electron, Scanning; Osteoblasts; Osteogenesis; Tissue Engineering; Tissue Scaffolds |
Depositing User: | Ms Sharifah Fahimah Saiyed Yeop |
Date Deposited: | 25 Mar 2022 06:34 |
Last Modified: | 25 Mar 2022 06:34 |
URI: | http://scholars.utp.edu.my/id/eprint/30106 |